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A novel speed sensor-less vector control of Dual Stator Induction machine with space vector based advanced 9-zone hybrid PWM for grid connected wind energy generation system

机译:基于空间矢量的先进九区混合PWM双定子感应电机的新型无速度传感器矢量控制,用于并网风力发电系统

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In this paper a novel speed sensor less vector control of Dual Stator Induction machine has been proposed for grid connected wind energy generation system. Dual Stator Induction machine consists of two stator winding separated by an electrical angle of 30°, with dissimilar pole to overcome the effect of harmonic current occurred in the stator windings. In this work the pole ratio of the two stator winding are taken as 3:1 in order to mitigate the magnetic saturation of the core and high losses which occurs at stator winding. The orientation of the machine is made in such a way that by controlling two stator currents in a perfectly decoupled way zero speed operation can be made possible. There by electrical frequency of it gets maintained at low speed, this characteristic of stator makes the Dual Stator Induction machine more suitable for speed sensor less operation. The two stator windings of the machine are fed from two independent Variable Voltage Variable Frequency inverter, which is being controlled by advanced bus clamping Pulse Width Modulation Technique. The Pulse Width Modulation proposed in this paper is a 9 zone hybrid PWM which results into lower line current ripple, reduced torque pulsation and minimized switch loss then the conventional space vector pulse width modulation, basic and advanced bus clamping PWM and the existing 3, 5 and 7 zone hybrid pulse width modulation. The simulation is being performed in MATLAB and the simulated results are being verified by experimental results. dSPACE DS-1104 Data Acquisition Card is being used to implement the overall control topology.
机译:在本文中,提出了一种新型的双定子感应电机无速度传感器矢量控制的并网风力发电系统。双定子感应电机由两个定子绕组组成,两个定子绕组之间的电角度为30°,极点互不相同,以克服定子绕组中产生的谐波电流的影响。在这项工作中,两个定子绕组的极比取为3:1,以减轻铁芯的磁饱和和定子绕组上产生的高损耗。电机的定向方式如下:通过以完全解耦的方式控制两个定子电流,可以实现零速运行。定子的这一特性使它的电气频率保持在低速状态,这使得双定子感应电机更适合于速度传感器较少的操作。电机的两个定子绕组由两个独立的可变电压可变变频器供电,该变频器由先进的总线钳位脉冲宽度调制技术控制。本文提出的脉冲宽度调制是一个9区混合PWM,与传统的空间矢量脉冲宽度调制,基本和高级母线钳位PWM以及现有的3,5相比,它具有更低的线电流纹波,更低的转矩脉动和最小的开关损耗。和7区混合脉冲宽度调制。仿真在MATLAB中进行,仿真结果通过实验结果进行验证。 dSPACE DS-1104数据采集卡用于实现整体控制拓扑。

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